EP1112083A2 - Use of an angiogenic factor for the treatment of microvascular angiopathies - Google Patents
Use of an angiogenic factor for the treatment of microvascular angiopathiesInfo
- Publication number
- EP1112083A2 EP1112083A2 EP99946776A EP99946776A EP1112083A2 EP 1112083 A2 EP1112083 A2 EP 1112083A2 EP 99946776 A EP99946776 A EP 99946776A EP 99946776 A EP99946776 A EP 99946776A EP 1112083 A2 EP1112083 A2 EP 1112083A2
- Authority
- EP
- European Patent Office
- Prior art keywords
- vegf
- factor
- injury
- angiogenic factor
- angiogenic
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
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- A61K38/17—Peptides having more than 20 amino acids; Gastrins; Somatostatins; Melanotropins; Derivatives thereof from animals; from humans
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Definitions
- the invention concerns a method for the prevention or repair of injury to nonvascular tissue associated with injury to blood vessels serving the tissue, by administering an effective amount of an angiogenic factor or an agonist thereof, or a factor stimulating the production of an angiogenic factor.
- the treatment preferably maintains the normal function of the organ comprising the nonvascular tissue, such as kidney, heart, or lungs.
- the invention concerns a method for the treatment of hemolytic uremic syndrome (HUS) by administering to a patient at risk of developing or having diagnosed HUS an effective amount of an angiogenic factor, or an agonist thereof, or a factor stimulating the production of an angiogenic factor.
- HUS hemolytic uremic syndrome
- the invention concerns a method for the prevention or repair of injury to vascular endothelial cells, comprising introducing into such endothelial cells a polynucleotide encoding an angiogenic or cytoprotective factor, an agonist thereof, or a factor stimulating the production of an angiogenic or cytoprotective factor.
- the angiogenic factor may, for example, be a vascular endothelial growth factor (VEGF), or a basic or acidic fibroblast growth factor (bFGF or aFGF).
- VEGF vascular endothelial growth factor
- bFGF or aFGF basic or acidic fibroblast growth factor
- the VEGF preferably is hVEGF )2 i or hVEGF ⁇ , which may, for example, be in homo- or heterodimeric form, and may be partially or fully unglycosylated.
- the angiogenic factors, such as VEGF preferably exert their activity primarily via effects other than inducing new blood vessel formation.
- Figure 1 is a schematic representation of the various forms of VEGF generated by alternative splicing of VEGF mRNA.
- the protein sequences encoded by each of the eight exons of the VEGF gene are represented by numbered boxes.
- the sequences encoded by exons 6 and 7 are rich in basic amino acid residues and confer the ability to interact with heparin and heparin-like molecules. Asterisks indicate N-linked glycosylation sites.
- Exon 1 and the first part of exon 2 (depicted by a narrower bar) encode the secretion signal sequence for the protein.
- Figure 2 shows a nucleotide sequence encoding native human VEGF ⁇ 2I (SEQ ID NO: 1).
- Figure 5 shows the amino acid sequence of native human VEGF ⁇ 45 (SEQ ID NO: 4).
- a chimeric molecule consisting of one chain comprising at least a portion of the A- or B-chain subunit of a platelet-derived growth factor, disulfide linked to a second chain comprising at least a portion of a VEGF molecule. More details of such dimers are provided, for example, in U.S. Patent Nos. 5,194,596 and 5,219,739 and in European Patent EP-B 0484 401, the disclosures of which are hereby expressly incorporated by reference. The nucleotide and amino acid sequences of and bovine VEGF ]20 are disclosed, for example, in U.S. Patent Nos. 5,194,596 and 5,219,739, and in EP 0 484 401.
- VEGF vascular endothelial growth factor
- Covalent derivatives are also included within the meaning of functional derivatives. Covalent modifications may be introduced into the molecule by reacting targeted amino acid residues with an organic derivatizing agent that is capable of reacting with selected side chains or terminal residues. Further details of such covalent modifications are provided, for example, in U.S. Patent No. 5,332,671, the disclosure of which is hereby expressly incorporated by reference.
- the CDRs in each chain are held together in close proximity by the FR regions and, with the CDRs from the other chain, contribute to the formation of the antigen-binding site of antibodies (see Kabat et al, NIH Publ. No.91-3242, Vol. I, pages 647-669 (1991)).
- the constant domains are not involved directly in binding an antibody to an antigen, but exhibit various effector functions, such as participation of the antibody in antibody-dependent cellular toxicity.
- “Framework” or "FR” residues are those variable domain residues other than the hypervariable region residues as herein defined.
- antibody is used herein in the broadest sense and specifically covers, without limitation, intact monoclonal antibodies, polyclonal antibodies, multispecific antibodies (e.g. bispecific antibodies) formed from at least two intact antibodies, and antibody fragments so long as they exhibit the desired biological activity.
- the term "monoclonal antibody” as used herein refers to an antibody obtained from a population of substantially homogeneous antibodies, i.e., the individual antibodies comprising the population are identical except for possible naturally occurring mutations that may be present in minor amounts. Monoclonal antibodies are highly specific, being directed against a single antigenic site. Furthermore, in contrast to conventional (polyclonal) antibody preparations which typically include different antibodies directed against different determinants (epitopes), each monoclonal antibody is directed against a single determinant on the antigen.
- the modifier "monoclonal” indicates the character of the antibody as being obtained from a substantially homogeneous population of antibodies, and is not to be construed as requiring production of the antibody by any particular method.
- the culture medium in which the hybridoma cells are cultured can then be assayed for the presence of monoclonal antibodies directed against the particular angiogenic factor used, such as VEGF.
- the binding specificity of monoclonal antibodies produced by the hybridoma cells is determined by immunoprecipitation or by an in vitro binding assay, such as radioimmunoassay (RIA) or enzyme-linked immunoabsorbent assay (ELISA).
- RIA radioimmunoassay
- ELISA enzyme-linked immunoabsorbent assay
- the binding affinity of the monoclonal antibody can, for example, be determined by the Scatchard analysis of Munson and Pollard, Anal. Biochem.. 107:220 (1980).
- the methods of the present invention further useful in the preservation or enhancement of function of organ allografts, including but not restricted to transplants of kidney, heart, liver, lung, pancreas, skin, bone, intestine, and xenografts.
- Pharmaceutically acceptable salts include acid addition salts such as those containing sulfate, hydrochloride, phosphate, sulfonate, sulfamate, sulfate, acetate, citrate, lactate, tartrate, methanesulfonate, ethanesulfonate, benzenesulfonate, p-toluenesulfonate, cyclolexylsulfonate, cyclohexylsulfamate and quinate.
- acid addition salts such as those containing sulfate, hydrochloride, phosphate, sulfonate, sulfamate, sulfate, acetate, citrate, lactate, tartrate, methanesulfonate, ethanesulfonate, benzenesulfonate, p-toluenesulfonate, cyclolexylsulfonate, cyclohe
- VEGF stimulates remodeling and tissue repair in a model of TMA
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- Medicinal Chemistry (AREA)
- Public Health (AREA)
- General Health & Medical Sciences (AREA)
- Pharmacology & Pharmacy (AREA)
- Chemical Kinetics & Catalysis (AREA)
- Organic Chemistry (AREA)
- Nuclear Medicine, Radiotherapy & Molecular Imaging (AREA)
- General Chemical & Material Sciences (AREA)
- Immunology (AREA)
- Vascular Medicine (AREA)
- Cardiology (AREA)
- Heart & Thoracic Surgery (AREA)
- Hematology (AREA)
- Epidemiology (AREA)
- Urology & Nephrology (AREA)
- Diabetes (AREA)
- Zoology (AREA)
- Gastroenterology & Hepatology (AREA)
- Proteomics, Peptides & Aminoacids (AREA)
- Transplantation (AREA)
- Pulmonology (AREA)
- Medicines That Contain Protein Lipid Enzymes And Other Medicines (AREA)
- Pharmaceuticals Containing Other Organic And Inorganic Compounds (AREA)
- Peptides Or Proteins (AREA)
- Acyclic And Carbocyclic Compounds In Medicinal Compositions (AREA)
- Medicines Containing Material From Animals Or Micro-Organisms (AREA)
- Medicines Containing Antibodies Or Antigens For Use As Internal Diagnostic Agents (AREA)
- Investigating Or Analysing Biological Materials (AREA)
Abstract
Description
Claims
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
EP03025732A EP1417971A3 (en) | 1998-09-09 | 1999-09-09 | Use of an angiogenic factor for the treatment of microvascular angiopathies |
Applications Claiming Priority (7)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US9969498P | 1998-09-09 | 1998-09-09 | |
US99694P | 1998-09-09 | ||
US12640699P | 1999-03-26 | 1999-03-26 | |
US126406P | 1999-03-26 | ||
US12661599P | 1999-03-27 | 1999-03-27 | |
US126615P | 1999-03-27 | ||
PCT/US1999/020480 WO2000013702A2 (en) | 1998-09-09 | 1999-09-09 | Use of an angiogenic factor for the treatment of microvascular angiopathies |
Related Child Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP03025732A Division EP1417971A3 (en) | 1998-09-09 | 1999-09-09 | Use of an angiogenic factor for the treatment of microvascular angiopathies |
Publications (2)
Publication Number | Publication Date |
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EP1112083A2 true EP1112083A2 (en) | 2001-07-04 |
EP1112083B1 EP1112083B1 (en) | 2003-11-12 |
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EP99946776A Expired - Lifetime EP1112083B1 (en) | 1998-09-09 | 1999-09-09 | Use of an angiogenic factor for the treatment of microvascular angiopathies |
EP99968631A Expired - Lifetime EP1109571B1 (en) | 1998-09-09 | 1999-09-09 | Methods of treating salt-dependent hypertension |
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Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP99968631A Expired - Lifetime EP1109571B1 (en) | 1998-09-09 | 1999-09-09 | Methods of treating salt-dependent hypertension |
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US (3) | US6352975B1 (en) |
EP (2) | EP1112083B1 (en) |
JP (2) | JP2002524421A (en) |
AT (2) | ATE260675T1 (en) |
AU (2) | AU5910599A (en) |
BR (2) | BR9913533A (en) |
CA (2) | CA2340320C (en) |
DE (2) | DE69915310T2 (en) |
DK (2) | DK1112083T3 (en) |
ES (2) | ES2211165T3 (en) |
IL (2) | IL141687A0 (en) |
PT (2) | PT1109571E (en) |
WO (2) | WO2000013703A2 (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113418940A (en) * | 2021-06-24 | 2021-09-21 | 电子科技大学 | Detection method and detection device based on X-ray tracing particles |
Families Citing this family (20)
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DK1112083T3 (en) * | 1998-09-09 | 2004-03-08 | Univ Washington | Treatment of microvascular angiopathies |
US6783954B2 (en) * | 1999-03-05 | 2004-08-31 | Compugen Ltd. | VEGF nucleic acid and amino acid sequences |
US7078382B1 (en) | 1999-11-02 | 2006-07-18 | Genentech, Inc. | Modulation of eNOS activity and therapeutic uses thereof |
CA2385665A1 (en) * | 1999-11-02 | 2001-05-10 | Genentech, Inc. | Modulation of enos activity and therapeutic uses thereof |
US20030129251A1 (en) | 2000-03-10 | 2003-07-10 | Gary Van Nest | Biodegradable immunomodulatory formulations and methods for use thereof |
US7129222B2 (en) * | 2000-03-10 | 2006-10-31 | Dynavax Technologies Corporation | Immunomodulatory formulations and methods for use thereof |
GB0008269D0 (en) | 2000-04-05 | 2000-05-24 | Astrazeneca Ab | Combination chemotherapy |
EP1414964B1 (en) | 2001-08-01 | 2010-03-24 | University Of Bristol | Vegf isoform |
CA2459647A1 (en) * | 2001-08-20 | 2003-02-27 | University Of Virginia Patent Foundation | Use of s-nitrosothiol signaling to treat disordered control of breathing |
US7981863B2 (en) * | 2001-09-19 | 2011-07-19 | Neuronova Ab | Treatment of Parkinson's disease with PDGF |
US20030171556A1 (en) * | 2001-12-13 | 2003-09-11 | Chi-Bom Chae | Beta-amyloid binding factors and inhibitors thereof |
US7795213B2 (en) | 2001-12-13 | 2010-09-14 | Posco | Methods of contacting β amyloid protein with VEGF |
US7335362B2 (en) | 2002-07-19 | 2008-02-26 | Beth Israel Deaconess Medical Center | Methods of treating pre-eclampsia or eclampsia |
JP2006068401A (en) * | 2004-09-03 | 2006-03-16 | Kyushu Institute Of Technology | Artificial blood vessel |
US7893244B2 (en) * | 2005-04-12 | 2011-02-22 | Intradigm Corporation | Composition and methods of RNAi therapeutics for treatment of cancer and other neovascularization diseases |
CA2604441A1 (en) * | 2005-04-12 | 2006-10-19 | Intradigm Corporation | Composition and methods of rnai therapeutics for treatment of cancer and other neovascularization diseases |
US8440619B2 (en) * | 2005-08-31 | 2013-05-14 | National University Corporation Kagawa University | Utilization of hypertension/hypercardia-preventing effect of D-allose |
ES2600781T3 (en) | 2008-12-04 | 2017-02-10 | Curna, Inc. | Treatment for diseases related to vascular endothelial growth factor (vegf) by inhibiting natural antisense transcripts of vegf |
GB0921525D0 (en) | 2009-12-08 | 2010-01-27 | Isis Innovation | Product and method |
EP3600251A4 (en) | 2017-03-30 | 2021-01-13 | Wake Forest University Health Sciences | Methods of treatment for kidney disease |
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US4456550A (en) | 1982-11-22 | 1984-06-26 | President And Fellows Of Harvard College | Vascular permeability factor |
US5240848A (en) | 1988-11-21 | 1993-08-31 | Monsanto Company | Dna sequences encoding human vascular permeability factor having 189 amino acids |
EP0464155B1 (en) | 1989-03-24 | 1997-05-07 | The Regents Of The University Of California | Endothelial cell growth factor, isolation and expression |
US5332671A (en) * | 1989-05-12 | 1994-07-26 | Genetech, Inc. | Production of vascular endothelial cell growth factor and DNA encoding same |
US5194596A (en) | 1989-07-27 | 1993-03-16 | California Biotechnology Inc. | Production of vascular endothelial cell growth factor |
US5219739A (en) | 1989-07-27 | 1993-06-15 | Scios Nova Inc. | DNA sequences encoding bVEGF120 and hVEGF121 and methods for the production of bovine and human vascular endothelial cell growth factors, bVEGF120 and hVEGF121 |
US5240714A (en) * | 1989-08-29 | 1993-08-31 | Rof Jose M S | Non-digoxin-like Na+, K+ -ATPase inhibitory factor |
US5318957A (en) * | 1992-09-02 | 1994-06-07 | The United States Of America As Represented By The Department Of Health And Human Services | Method of stimulating angiogenesis |
WO1998020027A2 (en) * | 1996-11-01 | 1998-05-14 | Eurogene Limited | Therapeutic use of an agent that stimulates no or prostacyclin production and delivery device |
US6485942B1 (en) * | 1997-02-14 | 2002-11-26 | Genentech, Inc. | Variants of vascular endothelial cell growth factor having altered pharmacological properties, and recombinant methods of production |
DK1112083T3 (en) * | 1998-09-09 | 2004-03-08 | Univ Washington | Treatment of microvascular angiopathies |
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1999
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- 1999-09-09 JP JP2000568510A patent/JP2002524421A/en active Pending
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- 1999-09-09 BR BR9913564-7A patent/BR9913564A/en not_active Application Discontinuation
- 1999-09-09 EP EP99946776A patent/EP1112083B1/en not_active Expired - Lifetime
- 1999-09-09 JP JP2000568511A patent/JP2002532382A/en active Pending
- 1999-09-09 EP EP99968631A patent/EP1109571B1/en not_active Expired - Lifetime
- 1999-09-09 US US09/392,932 patent/US6352975B1/en not_active Expired - Lifetime
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN113418940A (en) * | 2021-06-24 | 2021-09-21 | 电子科技大学 | Detection method and detection device based on X-ray tracing particles |
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